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Design construction and performance testing of a new system for energy saving in rural buildings

机译:一种新型农村建筑节能系统的设计施工和性能测试

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摘要

Drying fruit, heating residential buildings and providing a hot water supply in villages all consume energy. Using fossil fuel for these purposes creates pollution and costs too much. In contrast, the use of solar energy in these applications leads to a noticeable decrease both in pollution and investment costs. In this study, a new solar system was designed and tested in order to reduce energy usage in rural residential buildings and the food drying industry. As the peaks of energy consumption in the proposed system are not simultaneous, this new system is very effective in reducing energy consumption, controlling energy peaks and reducing environmental pollution. This system has the ability to provide the required energy in both summer and winter modes. In the summer mode, the energy supply is used for providing hot water and drying agricultural products, while in winter mode it is used for rural residences heating and hot water supply. Drying time has been varied between 51.23 and 42.45 h according to type of application, and average temperature difference between room and ambient is almost nearly 10℃ with different air heaters. The system includes energy supply and storage equipment, solar dryers, water collectors and rectangular, triangular, trapezoidal and double-pass with longitudinal fins air heaters. The system was tested in Iran for drying apricots, heating rural residential buildings and supplying hot water for domestic use, meanwhile, the energetic and exergetic efficiency of the system was calculated 37.3-61.3 and 3.2-9.7 respectively for different types of installations.
机译:干燥水果,给住宅建筑供热以及在村庄提供热水都消耗能源。为了这些目的而使用化石燃料会造成污染,并且成本过高。相反,在这些应用中使用太阳能导致污染和投资成本的显着降低。在这项研究中,设计并测试了一种新的太阳能系统,以减少农村居民住宅和食品干燥行业中的能源使用。由于拟议系统中的能耗峰值不是同时出现的,因此该新系统在降低能耗,控制能耗峰值和减少环境污染方面非常有效。该系统具有在夏季和冬季模式下提供所需能量的能力。在夏季模式下,能源供应用于提供热水和干燥农产品,而在冬季模式下,能源供应用于农村住宅的供暖和热水供应。根据应用类型的不同,干燥时间在51.23至42.45 h之间变化,使用不同的空气加热器,室内和环境之间的平均温差几乎接近10℃。该系统包括能源供应和存储设备,太阳能干燥器,集水器以及带有纵向翅片空气加热器的矩形,三角形,梯形和双通道。该系统在伊朗进行了杏干干燥,给农村居民住宅供暖和供家庭使用的热水的测试,同时,对于不同类型的装置,该系统的能量和能量效率分别计算为37.3-61.3和3.2-9.7。

著录项

  • 来源
    《Energy and Buildings》 |2011年第12期|p.3303-3310|共8页
  • 作者单位

    Environmental and Energy Faculty, Islamic Azad University Science and Research Branch. Tehran, Iran;

    Environmental and Energy Faculty, Islamic Azad University Science and Research Branch. Tehran, Iran;

    Environmental and Energy Faculty, Islamic Azad University Science and Research Branch. Tehran, Iran;

    Food Science and Technology Department, Islamic Azad University Science and Research Branch, Tehran, Iran;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    solar collectors; air heaters; dryers; solar energy; exergy;

    机译:太阳能集热器;空气加热器;烘干机;太阳能;火用;
  • 入库时间 2022-08-18 00:10:13

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